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高通量钙动员测定法用于人类痕量胺相关受体 1 的验证。

Validation of a High-Throughput Calcium Mobilization Assay for the Human Trace Amine-Associated Receptor 1.

机构信息

Center for Drug Discovery, RTI International, Research Triangle Park, NC, USA.

出版信息

SLAS Discov. 2021 Jan;26(1):140-150. doi: 10.1177/2472555220945279. Epub 2020 Jul 31.

Abstract

The human trace amine-associated receptor 1 (hTAAR1) is a G protein-coupled receptor (GPCR) that is widely expressed in monoaminergic nuclei in the central nervous system and has therapeutic potential for multiple diseases, including drug addiction and schizophrenia. Thus, identification of novel hTAAR1 ligands is critical to advancing our knowledge of hTAAR1 function and to the development of therapeutics for a wide range of diseases. Herein we describe the development of a robust, 3-addition high-throughput screening (HTS) calcium mobilization assay using stable CHO-Gα-hTAAR1 cells, which functionally couple hTAAR1 to the promiscuous Gα protein and thus allow signal transduction to occur through mobilization of internal calcium. Our previously established 96-well hTAAR1 assay was first miniaturized to the 384-well format and optimized to provide an assay with a Z' factor of 0.84, which is indicative of a robust HTS assay. Using the 3-addition protocol, 22,000 compounds were screened and yielded a ~1% agonist hit rate and a ~0.2% antagonist hit rate. Of the antagonist hits, two confirmed hits are the most potent hTAAR1 antagonists identified to date (IC = 206 and 281 nM). While scientists have been studying hTAAR1 for years, the lack of suitable hTAAR1 antagonists has been a major roadblock for studying the basic pharmacology of hTAAR1. Thus, these new ligands will serve as valuable tools to study hTAAR1-mediated signaling mechanisms, therapeutic potential, and in vivo functions.

摘要

人源追踪胺相关受体 1(hTAAR1)是一种 G 蛋白偶联受体(GPCR),广泛表达于中枢神经系统的单胺能核团,具有治疗多种疾病的潜力,包括药物成瘾和精神分裂症。因此,鉴定新型 hTAAR1 配体对于深入了解 hTAAR1 功能以及开发治疗多种疾病的疗法至关重要。在此,我们描述了一种使用稳定的 CHO-Gα-hTAAR1 细胞的稳健的 3 加成高通量筛选(HTS)钙动员测定法的开发,该测定法可使 hTAAR1 与混杂的 Gα 蛋白有效偶联,从而允许通过内部钙动员发生信号转导。我们之前建立的 96 孔 hTAAR1 测定法首先被小型化为 384 孔格式,并进行了优化,以提供 Z'因子为 0.84 的测定法,这表明该测定法是一种稳健的 HTS 测定法。使用 3 加成方案,对 22000 种化合物进行了筛选,得到了约 1%的激动剂命中率和约 0.2%的拮抗剂命中率。在拮抗剂命中中,有两个确证的命中是迄今为止鉴定出的最有效的 hTAAR1 拮抗剂(IC = 206 和 281 nM)。尽管科学家们多年来一直在研究 hTAAR1,但缺乏合适的 hTAAR1 拮抗剂一直是研究 hTAAR1 基本药理学的主要障碍。因此,这些新的配体将成为研究 hTAAR1 介导的信号转导机制、治疗潜力和体内功能的有价值的工具。

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